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Quantitative Interpretation of Hydration Dynamics Enabled the Fabrication of a Zwitterionic Antifouling Surface

机译:水化动力学的定量解释使得两性离子防污表面的制造

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In the medical industry, zwitterionic brushes have received significant attention owing to their antifouling effect that arose from their hydration ability. However, sufficient understanding of the hydration dynamics of zwitterionic brushes is required to fabricate the precisely controlled antifouling medical devices. In this paper, we successfully show that hydration, the interaction between water molecules and zwitterionic brushes, and its dynamics can be evaluated logically and quantitatively using (i) water contact angle, (ii) molecular dynamics simulation, and (iii) Raman spectroscopy. Based on the intuitive results on hydration, we precisely optimized the antifouling property of the model medical device, a removable orthodontic retainer, with various grafting efficiencies of 2-methacryloyloxyethyl phosphate choline. As a result, the model device reduced nonspecific adsorption of proteins and bacteria, indicating an improved antifouling effect, and also inhibited the formation of a biofilm. Furthermore, the device showed excellent physical properties desirable for application in the orthodontic field, meaning the balance between the antibacterial property and mechanical strength.
机译:在医学行业中,由于它们的水合能力产生的防污效果,两性而逝刷子得到了重大关注。然而,需要足够了解两性离子刷的水化动力学来制造精确控制的防污医疗装置。在本文中,我们成功地表明水分分子和两性离子刷之间的相互作用,以及其动力学可以使用(i)水接触角,(ii)分子动力学模拟和(iii)拉曼光谱法。基于对水合的直观结果,我们精确地优化了模型医疗装置的防污性,可移除的正畸保持器,具有2-甲基丙烯酰氧基乙基磷酸胆碱的各种接枝效率。结果,模型装置减少了蛋白质和细菌的非特异性吸附,表明改善的防污效果,并且还抑制了生物膜的形成。此外,该装置显示出优异的物理性质,在正畸域中施用,这意味着抗菌性能与机械强度之间的平衡。

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